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	<title>MEMSuniverse &#187; devices&#8221;</title>
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		<title>Self-Assembling Nanoliter Containers</title>
		<link>http://www.memsuniverse.com/microfabrication/self-assembling-nanoliter-containers.html</link>
		<comments>http://www.memsuniverse.com/microfabrication/self-assembling-nanoliter-containers.html#comments</comments>
		<pubDate>Wed, 12 Nov 2008 15:42:14 +0000</pubDate>
		<dc:creator>admin</dc:creator>
				<category><![CDATA[Microfabrication]]></category>
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		<category><![CDATA[David]]></category>
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		<category><![CDATA[devices"]]></category>
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		<guid isPermaLink="false">http://www.memsuniverse.com/?p=839</guid>
		<description><![CDATA[Nanotechnology, the new science of extreme miniaturization, is a rapidly growing field in engineering. On this size scale, it is extremely difficult and expensive to fabricate analogs of macroscale engineering, such as grippers. Drawing inspiration from biological fabrication in nature, engineers are seeking to self-assemble structures from the bottom up. This manufacturing paradigm has been [...]]]></description>
			<content:encoded><![CDATA[<p><img src="http://i.ytimg.com/vi/Ta_7N8N7bpc/2.jpg" align="left">Nanotechnology, the new science of extreme miniaturization, is a rapidly growing field in engineering. On this size scale, it is extremely difficult and expensive to fabricate analogs of macroscale engineering, such as grippers. Drawing inspiration from biological fabrication in nature, engineers are seeking to self-assemble structures from the bottom up. This manufacturing paradigm has been largely unexplored in human engineering since the process is generally perceived to be indeterminable and uncontrollable.</p>
<p>The Gracias Lab at Johns Hopkins has developed a relatively easy, precise, and cost-effective process by which the 2D templates of semi-tethered &#8220;faces&#8221; can self-assemble into controlled 3D structures by utilizing the natural phenomena of surface tension. This video highlights the development, manufacturing process, and proposed functions (cell encapsulation devices and controlled drug delivery carriers) of our self-assembling nanoliter containers.</p>
<p>Duration : <b>0:4:11</b></p>
<p><span id="more-839"></span><br /></p>
<div class="crp_related"><h3>Related Posts:</h3><ul><li><a href="http://www.memsuniverse.com/microfabrication/nanomanufacturing-introduction.html" rel="bookmark" class="crp_title">Nanomanufacturing: introduction</a></li><li><a href="http://www.memsuniverse.com/mems-help/what-is-best-engineering-field-if-you-want-to-get-into-nanotechnology.html" rel="bookmark" class="crp_title">What is best engineering field if you want to get into nanotechnology?</a></li><li><a href="http://www.memsuniverse.com/microfluidics/surface-tension-confined-microfluidics.html" rel="bookmark" class="crp_title">Surface Tension-Confined Microfluidics</a></li><li><a href="http://www.memsuniverse.com/mems-help/is-it-possible-to-do-postgraduation-in-nanotechnology-after-an-undergraduate-degree-in-mechanical-engineering.html" rel="bookmark" class="crp_title">Is it possible to do postgraduation in nanotechnology after an undergraduate degree in Mechanical Engineering?</a></li><li><a href="http://www.memsuniverse.com/events/eighteenth-annual-international-conference-on-compositesnano-engineering-icce-18.html" rel="bookmark" class="crp_title">Eighteenth Annual International Conference on COMPOSITES/NANO ENGINEERING (ICCE-18)</a></li><li>Powered by <a href="http://ajaydsouza.com/wordpress/plugins/contextual-related-posts/" rel="external nofollow">Contextual Related Posts</a></li></ul></div>]]></content:encoded>
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		<title>ADXL001: ADI&#8217;s MEMS Vibration Demo at Sensors Expo 2008</title>
		<link>http://www.memsuniverse.com/mems/adxl001-adis-mems-vibration-demo-at-sensors-expo-2008.html</link>
		<comments>http://www.memsuniverse.com/mems/adxl001-adis-mems-vibration-demo-at-sensors-expo-2008.html#comments</comments>
		<pubDate>Mon, 16 Jun 2008 09:16:59 +0000</pubDate>
		<dc:creator>admin</dc:creator>
				<category><![CDATA[MEMS]]></category>
		<category><![CDATA[ADXL001]]></category>
		<category><![CDATA[Analog]]></category>
		<category><![CDATA[devices"]]></category>
		<category><![CDATA[industrial]]></category>
		<category><![CDATA[sensor]]></category>
		<category><![CDATA[shock]]></category>
		<category><![CDATA[vibration]]></category>

		<guid isPermaLink="false">http://www.memsuniverse.com/?p=493</guid>
		<description><![CDATA[This demo showcases the unique features of Analog Devices&#8217; ADXL001 iMEMS® shock and vibration sensor which is designed for industrial equipment monitoring applications. The ADXL001 is mounted to the cone of a speaker to simulate a vibrations source. The output of the sensor is connected to SigmaDSP to perform the necessary signal processing and the [...]]]></description>
			<content:encoded><![CDATA[<p><img src="http://img.youtube.com/vi/h-SIUQxKfWA/2.jpg" align="left">This demo showcases the unique features of Analog Devices&#8217; ADXL001 iMEMS® shock and vibration sensor which is designed for industrial equipment monitoring applications. The ADXL001 is mounted to the cone of a speaker to simulate a vibrations source. The output of the sensor is connected to SigmaDSP to perform the necessary signal processing and the vibrations is presented using Analog Devices&#8217; SigmaStudio™. For more information, visit analog.com/adxl001.</p>
<p>Duration : <b>0:2:33</b> </p>
<p><span id="more-493"></span><br /><center><!--adsense#middle--></center></p>
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